Abbildung von: Modern Biotechnology in Healthcare - Taylor & Francis Ltd

Modern Biotechnology in Healthcare

Advances and Applications
Sheikh Umar Ahmad(Herausgeber*in)
Taylor & Francis Ltd (Verlag)
Erscheint ca. am 18. August 2023
260 Seiten
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978-1-000-84432-0 (ISBN)
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The chapters in the book explore



microRNAs as next-generation therapeutic and diagnostic agents
applications of CRISPR-Cas-based diagnostics
CRISPR-Cas as a genome-editing tool
engineered gut microbiomes for treating diseases
antibiotics and plant-derived antimicrobials for healthcare
stem cell technology and regenerative medicine
and more
 

The chapters in the book explore

<ul><li>microRNAs as next-generation therapeutic and diagnostic agents</li><li>applications of CRISPR-Cas-based diagnostics</li><li>CRISPR-Cas as a genome-editing tool</li><li>engineered gut microbiomes for treating diseases</li><li>antibiotics and plant-derived antimicrobials for healthcare</li><li>stem cell technology and regenerative medicine</li><li>and more</li></ul>
Sprache
Englisch
Verlagsort
London
Großbritannien
Verlagsgruppe
Taylor & Francis Ebooks
Zielgruppe
Für höhere Schule und Studium
Illustrationen
20 Tables, black and white; 8 Line drawings, color; 16 Line drawings, black and white; 1 Halftones, color; 1 Halftones, black and white; 9 Illustrations, color; 17 Illustrations, black and white
Schlagworte
ISBN-13
978-1-000-84432-0 (9781000844320)
Schweitzer Klassifikation
Thema Klassifikation
DNB DDC Sachgruppen
BIC 2 Klassifikation
BISAC Klassifikation
Sheikh Umar Ahmad, PhD, is a Postdoctoral Research Associate in the Department of Dermatology, Wisconsin Institutes for Medical Research, School of Medicine and Public Health, University of Wisconsin-Madison, United States. He is involved in research projects aimed at understanding the "Developmental Genetics of Planar Cell Polarity in Mammalian Skin." With more than six years of work experience as part of a team, Dr. Ahmad completed his doctoral studies at the CSIR-Indian Institute of Integrative Medicine, Jammu & Kashmir, India, where his research was focused on "Understanding the Interplay of Autophagy and DNA Damage Response Mechanism in the Regulation of Ultraviolet-(B)-Induced Skin Photodamage." Dr. Ahmad's thesis work mechanistically elucidated the role of interventional autophagy as a promising therapeutic strategy against skin photodamage disorders. He published his research findings in various international journals of repute and presented his work at several scientific conferences. He has received several awards for his research work.

<strong>Sheikh Umar Ahmad, PhD</strong>, is a Postdoctoral Research Associate in the Department of Dermatology, Wisconsin Institutes for Medical Research, School of Medicine and Public Health, University of Wisconsin-Madison, United States. He is involved in research projects aimed at understanding the "Developmental Genetics of Planar Cell Polarity in Mammalian Skin." With more than six years of work experience as part of a team, Dr. Ahmad completed his doctoral studies at the CSIR-Indian Institute of Integrative Medicine, Jammu & Kashmir, India, where his research was focused on "Understanding the Interplay of Autophagy and DNA Damage Response Mechanism in the Regulation of Ultraviolet-(B)-Induced Skin Photodamage." Dr. Ahmad's thesis work mechanistically elucidated the role of interventional autophagy as a promising therapeutic strategy against skin photodamage disorders. He published his research findings in various international journals of repute and presented his work at several scientific conferences. He has received several awards for his research work.

1. MicroRNAs: Next-Generation Therapeutic and Diagnostic Agents 2. Evolving CRISPR-Cas-Based Diagnostics and Its Reliability 3. Engineered Gut Microbiome in Treating Diseases and Its Applications in Modern Biotechnology 4. Antibiotics and Plant-Derived Antimicrobials as an Alternative Source to Control Infections 5. Personalized Medicine: Understanding the Individual Intricacies 6. Stem Cell Technology and Regenerative Medicine: A Travel Back to Roots 7. CRISPR-Cas Genome-Editing Tool: A Prospective Application to Study Human Diseases 8. Emerging Immunotherapy's for Healthcare System

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